The spatial cross-correlation method for dispersive surface waves

Dispersive surface waves are routinely used to estimate the subsurface shear-wave velocity distribution, at all length scales. In the well-known Spatial Autocorrelation method, dispersion information is gained from the correlation of seismic noise signals recorded on the vertical (or radial) compone...

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Veröffentlicht in:Geophysical journal international 2014-10, Vol.199 (1), p.1-10
Hauptverfasser: Lamb, Andrew P., van Wijk, Kasper, Liberty, Lee M., Mikesell, T. Dylan
Format: Artikel
Sprache:eng
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Zusammenfassung:Dispersive surface waves are routinely used to estimate the subsurface shear-wave velocity distribution, at all length scales. In the well-known Spatial Autocorrelation method, dispersion information is gained from the correlation of seismic noise signals recorded on the vertical (or radial) components. We demonstrate practical advantages of including the cross-correlation between radial and vertical components of the wavefield in a spatial cross-correlation method. The addition of cross-correlation information increases the resolution and robustness of the phase velocity dispersion information, as demonstrated in numerical simulations and a near-surface field study with active seismic sources, where our method confirms the presence of a fault-zone conduit in a geothermal field.
ISSN:0956-540X
1365-246X
DOI:10.1093/gji/ggu237